1use std::io;
2
3use serde::Serialize;
4
5use crate::compiler_interface::with;
6use crate::mir::pretty::function_body;
7use crate::ty::{
8 AdtDef, ClosureDef, CoroutineClosureDef, CoroutineDef, GenericArgs, MirConst, Movability,
9 Region, RigidTy, Ty, TyConst, TyKind, VariantIdx,
10};
11use crate::{Error, Opaque, Span, Symbol};
12
13#[derive(Clone, Debug, Serialize)]
15pub struct Body {
16 pub blocks: Vec<BasicBlock>,
17
18 pub(super) locals: LocalDecls,
24
25 pub(super) arg_count: usize,
27
28 pub var_debug_info: Vec<VarDebugInfo>,
30
31 pub(super) spread_arg: Option<Local>,
35
36 pub span: Span,
38}
39
40pub type BasicBlockIdx = usize;
41
42impl Body {
43 pub fn new(
48 blocks: Vec<BasicBlock>,
49 locals: LocalDecls,
50 arg_count: usize,
51 var_debug_info: Vec<VarDebugInfo>,
52 spread_arg: Option<Local>,
53 span: Span,
54 ) -> Self {
55 assert!(
58 locals.len() > arg_count,
59 "A Body must contain at least a local for the return value and each of the function's arguments"
60 );
61 Self { blocks, locals, arg_count, var_debug_info, spread_arg, span }
62 }
63
64 pub fn ret_local(&self) -> &LocalDecl {
66 &self.locals[RETURN_LOCAL]
67 }
68
69 pub fn arg_locals(&self) -> &[LocalDecl] {
71 &self.locals[1..][..self.arg_count]
72 }
73
74 pub fn inner_locals(&self) -> &[LocalDecl] {
77 &self.locals[self.arg_count + 1..]
78 }
79
80 pub(crate) fn ret_local_mut(&mut self) -> &mut LocalDecl {
82 &mut self.locals[RETURN_LOCAL]
83 }
84
85 pub(crate) fn arg_locals_mut(&mut self) -> &mut [LocalDecl] {
87 &mut self.locals[1..][..self.arg_count]
88 }
89
90 pub(crate) fn inner_locals_mut(&mut self) -> &mut [LocalDecl] {
93 &mut self.locals[self.arg_count + 1..]
94 }
95
96 pub fn locals(&self) -> &[LocalDecl] {
101 &self.locals
102 }
103
104 pub fn local_decl(&self, local: Local) -> Option<&LocalDecl> {
106 self.locals.get(local)
107 }
108
109 pub fn local_decls(&self) -> impl Iterator<Item = (Local, &LocalDecl)> {
111 self.locals.iter().enumerate()
112 }
113
114 pub fn dump<W: io::Write>(&self, w: &mut W, fn_name: &str) -> io::Result<()> {
116 function_body(w, self, fn_name)
117 }
118
119 pub fn spread_arg(&self) -> Option<Local> {
120 self.spread_arg
121 }
122}
123
124type LocalDecls = Vec<LocalDecl>;
125
126#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
127pub struct LocalDecl {
128 pub ty: Ty,
129 pub span: Span,
130 pub mutability: Mutability,
131}
132
133#[derive(Clone, PartialEq, Eq, Debug, Serialize)]
134pub struct BasicBlock {
135 pub statements: Vec<Statement>,
136 pub terminator: Terminator,
137}
138
139#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
140pub struct Terminator {
141 pub kind: TerminatorKind,
142 pub span: Span,
143}
144
145impl Terminator {
146 pub fn successors(&self) -> Successors {
147 self.kind.successors()
148 }
149}
150
151pub type Successors = Vec<BasicBlockIdx>;
152
153#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
154pub enum TerminatorKind {
155 Goto {
156 target: BasicBlockIdx,
157 },
158 SwitchInt {
159 discr: Operand,
160 targets: SwitchTargets,
161 },
162 Resume,
163 Abort,
164 Return,
165 Unreachable,
166 Drop {
167 place: Place,
168 target: BasicBlockIdx,
169 unwind: UnwindAction,
170 },
171 Call {
172 func: Operand,
173 args: Vec<Operand>,
174 destination: Place,
175 target: Option<BasicBlockIdx>,
176 unwind: UnwindAction,
177 },
178 Assert {
179 cond: Operand,
180 expected: bool,
181 msg: AssertMessage,
182 target: BasicBlockIdx,
183 unwind: UnwindAction,
184 },
185 InlineAsm {
186 template: String,
187 operands: Vec<InlineAsmOperand>,
188 options: String,
189 line_spans: String,
190 destination: Option<BasicBlockIdx>,
191 unwind: UnwindAction,
192 },
193}
194
195impl TerminatorKind {
196 pub fn successors(&self) -> Successors {
197 use self::TerminatorKind::*;
198 match *self {
199 Call { target: Some(t), unwind: UnwindAction::Cleanup(u), .. }
200 | Drop { target: t, unwind: UnwindAction::Cleanup(u), .. }
201 | Assert { target: t, unwind: UnwindAction::Cleanup(u), .. }
202 | InlineAsm { destination: Some(t), unwind: UnwindAction::Cleanup(u), .. } => {
203 vec![t, u]
204 }
205 Goto { target: t }
206 | Call { target: None, unwind: UnwindAction::Cleanup(t), .. }
207 | Call { target: Some(t), unwind: _, .. }
208 | Drop { target: t, unwind: _, .. }
209 | Assert { target: t, unwind: _, .. }
210 | InlineAsm { destination: None, unwind: UnwindAction::Cleanup(t), .. }
211 | InlineAsm { destination: Some(t), unwind: _, .. } => {
212 vec![t]
213 }
214
215 Return
216 | Resume
217 | Abort
218 | Unreachable
219 | Call { target: None, unwind: _, .. }
220 | InlineAsm { destination: None, unwind: _, .. } => {
221 vec![]
222 }
223 SwitchInt { ref targets, .. } => targets.all_targets(),
224 }
225 }
226
227 pub fn unwind(&self) -> Option<&UnwindAction> {
228 match *self {
229 TerminatorKind::Goto { .. }
230 | TerminatorKind::Return
231 | TerminatorKind::Unreachable
232 | TerminatorKind::Resume
233 | TerminatorKind::Abort
234 | TerminatorKind::SwitchInt { .. } => None,
235 TerminatorKind::Call { ref unwind, .. }
236 | TerminatorKind::Assert { ref unwind, .. }
237 | TerminatorKind::Drop { ref unwind, .. }
238 | TerminatorKind::InlineAsm { ref unwind, .. } => Some(unwind),
239 }
240 }
241}
242
243#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
244pub struct InlineAsmOperand {
245 pub in_value: Option<Operand>,
246 pub out_place: Option<Place>,
247 pub raw_rpr: String,
250}
251
252#[derive(Copy, Clone, Debug, Eq, PartialEq, Serialize)]
253pub enum UnwindAction {
254 Continue,
255 Unreachable,
256 Terminate,
257 Cleanup(BasicBlockIdx),
258}
259
260#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
261pub enum AssertMessage {
262 BoundsCheck { len: Operand, index: Operand },
263 Overflow(BinOp, Operand, Operand),
264 OverflowNeg(Operand),
265 DivisionByZero(Operand),
266 RemainderByZero(Operand),
267 ResumedAfterReturn(CoroutineKind),
268 ResumedAfterPanic(CoroutineKind),
269 ResumedAfterDrop(CoroutineKind),
270 MisalignedPointerDereference { required: Operand, found: Operand },
271 NullPointerDereference,
272 InvalidEnumConstruction(Operand),
273}
274
275impl AssertMessage {
276 pub fn description(&self) -> Result<&'static str, Error> {
277 match self {
278 AssertMessage::Overflow(BinOp::Add, _, _) => Ok("attempt to add with overflow"),
279 AssertMessage::Overflow(BinOp::Sub, _, _) => Ok("attempt to subtract with overflow"),
280 AssertMessage::Overflow(BinOp::Mul, _, _) => Ok("attempt to multiply with overflow"),
281 AssertMessage::Overflow(BinOp::Div, _, _) => Ok("attempt to divide with overflow"),
282 AssertMessage::Overflow(BinOp::Rem, _, _) => {
283 Ok("attempt to calculate the remainder with overflow")
284 }
285 AssertMessage::OverflowNeg(_) => Ok("attempt to negate with overflow"),
286 AssertMessage::Overflow(BinOp::Shr, _, _) => Ok("attempt to shift right with overflow"),
287 AssertMessage::Overflow(BinOp::Shl, _, _) => Ok("attempt to shift left with overflow"),
288 AssertMessage::Overflow(op, _, _) => Err(error!("`{:?}` cannot overflow", op)),
289 AssertMessage::DivisionByZero(_) => Ok("attempt to divide by zero"),
290 AssertMessage::RemainderByZero(_) => {
291 Ok("attempt to calculate the remainder with a divisor of zero")
292 }
293 AssertMessage::ResumedAfterReturn(CoroutineKind::Coroutine(_)) => {
294 Ok("coroutine resumed after completion")
295 }
296 AssertMessage::ResumedAfterReturn(CoroutineKind::Desugared(
297 CoroutineDesugaring::Async,
298 _,
299 )) => Ok("`async fn` resumed after completion"),
300 AssertMessage::ResumedAfterReturn(CoroutineKind::Desugared(
301 CoroutineDesugaring::Gen,
302 _,
303 )) => Ok("`async gen fn` resumed after completion"),
304 AssertMessage::ResumedAfterReturn(CoroutineKind::Desugared(
305 CoroutineDesugaring::AsyncGen,
306 _,
307 )) => Ok("`gen fn` should just keep returning `AssertMessage::None` after completion"),
308 AssertMessage::ResumedAfterPanic(CoroutineKind::Coroutine(_)) => {
309 Ok("coroutine resumed after panicking")
310 }
311 AssertMessage::ResumedAfterPanic(CoroutineKind::Desugared(
312 CoroutineDesugaring::Async,
313 _,
314 )) => Ok("`async fn` resumed after panicking"),
315 AssertMessage::ResumedAfterPanic(CoroutineKind::Desugared(
316 CoroutineDesugaring::Gen,
317 _,
318 )) => Ok("`async gen fn` resumed after panicking"),
319 AssertMessage::ResumedAfterPanic(CoroutineKind::Desugared(
320 CoroutineDesugaring::AsyncGen,
321 _,
322 )) => Ok("`gen fn` should just keep returning `AssertMessage::None` after panicking"),
323
324 AssertMessage::ResumedAfterDrop(CoroutineKind::Coroutine(_)) => {
325 Ok("coroutine resumed after async drop")
326 }
327 AssertMessage::ResumedAfterDrop(CoroutineKind::Desugared(
328 CoroutineDesugaring::Async,
329 _,
330 )) => Ok("`async fn` resumed after async drop"),
331 AssertMessage::ResumedAfterDrop(CoroutineKind::Desugared(
332 CoroutineDesugaring::Gen,
333 _,
334 )) => Ok("`async gen fn` resumed after async drop"),
335 AssertMessage::ResumedAfterDrop(CoroutineKind::Desugared(
336 CoroutineDesugaring::AsyncGen,
337 _,
338 )) => Ok("`gen fn` should just keep returning `AssertMessage::None` after async drop"),
339
340 AssertMessage::BoundsCheck { .. } => Ok("index out of bounds"),
341 AssertMessage::MisalignedPointerDereference { .. } => {
342 Ok("misaligned pointer dereference")
343 }
344 AssertMessage::NullPointerDereference => Ok("null pointer dereference occurred"),
345 AssertMessage::InvalidEnumConstruction(_) => {
346 Ok("trying to construct an enum from an invalid value")
347 }
348 }
349 }
350}
351
352#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
353pub enum BinOp {
354 Add,
355 AddUnchecked,
356 Sub,
357 SubUnchecked,
358 Mul,
359 MulUnchecked,
360 Div,
361 Rem,
362 BitXor,
363 BitAnd,
364 BitOr,
365 Shl,
366 ShlUnchecked,
367 Shr,
368 ShrUnchecked,
369 Eq,
370 Lt,
371 Le,
372 Ne,
373 Ge,
374 Gt,
375 Cmp,
376 Offset,
377}
378
379impl BinOp {
380 pub fn ty(&self, lhs_ty: Ty, rhs_ty: Ty) -> Ty {
383 with(|ctx| ctx.binop_ty(*self, lhs_ty, rhs_ty))
384 }
385}
386
387#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
388pub enum UnOp {
389 Not,
390 Neg,
391 PtrMetadata,
392}
393
394impl UnOp {
395 pub fn ty(&self, arg_ty: Ty) -> Ty {
398 with(|ctx| ctx.unop_ty(*self, arg_ty))
399 }
400}
401
402#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
403pub enum CoroutineKind {
404 Desugared(CoroutineDesugaring, CoroutineSource),
405 Coroutine(Movability),
406}
407
408#[derive(Copy, Clone, Debug, Eq, PartialEq, Serialize)]
409pub enum CoroutineSource {
410 Block,
411 Closure,
412 Fn,
413}
414
415#[derive(Copy, Clone, Debug, Eq, PartialEq, Serialize)]
416pub enum CoroutineDesugaring {
417 Async,
418
419 Gen,
420
421 AsyncGen,
422}
423
424pub(crate) type LocalDefId = Opaque;
425pub(crate) type Coverage = Opaque;
429
430#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
432pub enum FakeReadCause {
433 ForMatchGuard,
434 ForMatchedPlace(LocalDefId),
435 ForGuardBinding,
436 ForLet(LocalDefId),
437 ForIndex,
438}
439
440#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
442pub enum RetagKind {
443 FnEntry,
444 TwoPhase,
445 Raw,
446 Default,
447}
448
449#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
450pub enum Variance {
451 Covariant,
452 Invariant,
453 Contravariant,
454 Bivariant,
455}
456
457#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
458pub struct CopyNonOverlapping {
459 pub src: Operand,
460 pub dst: Operand,
461 pub count: Operand,
462}
463
464#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
465pub enum NonDivergingIntrinsic {
466 Assume(Operand),
467 CopyNonOverlapping(CopyNonOverlapping),
468}
469
470#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
471pub struct Statement {
472 pub kind: StatementKind,
473 pub span: Span,
474}
475
476#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
477pub enum StatementKind {
478 Assign(Place, Rvalue),
479 FakeRead(FakeReadCause, Place),
480 SetDiscriminant { place: Place, variant_index: VariantIdx },
481 StorageLive(Local),
482 StorageDead(Local),
483 Retag(RetagKind, Place),
484 PlaceMention(Place),
485 AscribeUserType { place: Place, projections: UserTypeProjection, variance: Variance },
486 Coverage(Coverage),
487 Intrinsic(NonDivergingIntrinsic),
488 ConstEvalCounter,
489 Nop,
490}
491
492#[derive(Clone, Debug, Eq, PartialEq, Hash, Serialize)]
493pub enum Rvalue {
494 AddressOf(RawPtrKind, Place),
499
500 Aggregate(AggregateKind, Vec<Operand>),
509
510 BinaryOp(BinOp, Operand, Operand),
523
524 Cast(CastKind, Operand, Ty),
528
529 CheckedBinaryOp(BinOp, Operand, Operand),
534
535 CopyForDeref(Place),
539
540 Discriminant(Place),
549
550 Len(Place),
556
557 Ref(Region, BorrowKind, Place),
559
560 Repeat(Operand, TyConst),
569
570 ShallowInitBox(Operand, Ty),
576
577 ThreadLocalRef(crate::CrateItem),
589
590 NullaryOp(NullOp, Ty),
592
593 UnaryOp(UnOp, Operand),
599
600 Use(Operand),
602}
603
604impl Rvalue {
605 pub fn ty(&self, locals: &[LocalDecl]) -> Result<Ty, Error> {
606 match self {
607 Rvalue::Use(operand) => operand.ty(locals),
608 Rvalue::Repeat(operand, count) => {
609 Ok(Ty::new_array_with_const_len(operand.ty(locals)?, count.clone()))
610 }
611 Rvalue::ThreadLocalRef(did) => Ok(did.ty()),
612 Rvalue::Ref(reg, bk, place) => {
613 let place_ty = place.ty(locals)?;
614 Ok(Ty::new_ref(reg.clone(), place_ty, bk.to_mutable_lossy()))
615 }
616 Rvalue::AddressOf(mutability, place) => {
617 let place_ty = place.ty(locals)?;
618 Ok(Ty::new_ptr(place_ty, mutability.to_mutable_lossy()))
619 }
620 Rvalue::Len(..) => Ok(Ty::usize_ty()),
621 Rvalue::Cast(.., ty) => Ok(*ty),
622 Rvalue::BinaryOp(op, lhs, rhs) => {
623 let lhs_ty = lhs.ty(locals)?;
624 let rhs_ty = rhs.ty(locals)?;
625 Ok(op.ty(lhs_ty, rhs_ty))
626 }
627 Rvalue::CheckedBinaryOp(op, lhs, rhs) => {
628 let lhs_ty = lhs.ty(locals)?;
629 let rhs_ty = rhs.ty(locals)?;
630 let ty = op.ty(lhs_ty, rhs_ty);
631 Ok(Ty::new_tuple(&[ty, Ty::bool_ty()]))
632 }
633 Rvalue::UnaryOp(op, operand) => {
634 let arg_ty = operand.ty(locals)?;
635 Ok(op.ty(arg_ty))
636 }
637 Rvalue::Discriminant(place) => {
638 let place_ty = place.ty(locals)?;
639 place_ty
640 .kind()
641 .discriminant_ty()
642 .ok_or_else(|| error!("Expected a `RigidTy` but found: {place_ty:?}"))
643 }
644 Rvalue::NullaryOp(NullOp::OffsetOf(..), _) => Ok(Ty::usize_ty()),
645 Rvalue::NullaryOp(NullOp::ContractChecks, _)
646 | Rvalue::NullaryOp(NullOp::UbChecks, _) => Ok(Ty::bool_ty()),
647 Rvalue::Aggregate(ak, ops) => match *ak {
648 AggregateKind::Array(ty) => Ty::try_new_array(ty, ops.len() as u64),
649 AggregateKind::Tuple => Ok(Ty::new_tuple(
650 &ops.iter().map(|op| op.ty(locals)).collect::<Result<Vec<_>, _>>()?,
651 )),
652 AggregateKind::Adt(def, _, ref args, _, _) => Ok(def.ty_with_args(args)),
653 AggregateKind::Closure(def, ref args) => Ok(Ty::new_closure(def, args.clone())),
654 AggregateKind::Coroutine(def, ref args) => Ok(Ty::new_coroutine(def, args.clone())),
655 AggregateKind::CoroutineClosure(def, ref args) => {
656 Ok(Ty::new_coroutine_closure(def, args.clone()))
657 }
658 AggregateKind::RawPtr(ty, mutability) => Ok(Ty::new_ptr(ty, mutability)),
659 },
660 Rvalue::ShallowInitBox(_, ty) => Ok(Ty::new_box(*ty)),
661 Rvalue::CopyForDeref(place) => place.ty(locals),
662 }
663 }
664}
665
666#[derive(Clone, Debug, Eq, PartialEq, Hash, Serialize)]
667pub enum AggregateKind {
668 Array(Ty),
669 Tuple,
670 Adt(AdtDef, VariantIdx, GenericArgs, Option<UserTypeAnnotationIndex>, Option<FieldIdx>),
671 Closure(ClosureDef, GenericArgs),
672 Coroutine(CoroutineDef, GenericArgs),
673 CoroutineClosure(CoroutineClosureDef, GenericArgs),
674 RawPtr(Ty, Mutability),
675}
676
677#[derive(Clone, Debug, Eq, PartialEq, Hash, Serialize)]
678pub enum Operand {
679 Copy(Place),
680 Move(Place),
681 Constant(ConstOperand),
682}
683
684#[derive(Clone, Eq, PartialEq, Hash, Serialize)]
685pub struct Place {
686 pub local: Local,
687 pub projection: Vec<ProjectionElem>,
689}
690
691impl From<Local> for Place {
692 fn from(local: Local) -> Self {
693 Place { local, projection: vec![] }
694 }
695}
696
697#[derive(Clone, Debug, Eq, PartialEq, Hash, Serialize)]
698pub struct ConstOperand {
699 pub span: Span,
700 pub user_ty: Option<UserTypeAnnotationIndex>,
701 pub const_: MirConst,
702}
703
704#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
706pub struct VarDebugInfo {
707 pub name: Symbol,
709
710 pub source_info: SourceInfo,
713
714 pub composite: Option<VarDebugInfoFragment>,
717
718 pub value: VarDebugInfoContents,
720
721 pub argument_index: Option<u16>,
725}
726
727impl VarDebugInfo {
728 pub fn local(&self) -> Option<Local> {
730 match &self.value {
731 VarDebugInfoContents::Place(place) if place.projection.is_empty() => Some(place.local),
732 VarDebugInfoContents::Place(_) | VarDebugInfoContents::Const(_) => None,
733 }
734 }
735
736 pub fn constant(&self) -> Option<&ConstOperand> {
738 match &self.value {
739 VarDebugInfoContents::Place(_) => None,
740 VarDebugInfoContents::Const(const_op) => Some(const_op),
741 }
742 }
743}
744
745pub type SourceScope = u32;
746
747#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
748pub struct SourceInfo {
749 pub span: Span,
750 pub scope: SourceScope,
751}
752
753#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
754pub struct VarDebugInfoFragment {
755 pub ty: Ty,
756 pub projection: Vec<ProjectionElem>,
757}
758
759#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
760pub enum VarDebugInfoContents {
761 Place(Place),
762 Const(ConstOperand),
763}
764
765#[derive(Clone, Debug, Eq, PartialEq, Hash, Serialize)]
771pub enum ProjectionElem {
772 Deref,
774
775 Field(FieldIdx, Ty),
779
780 Index(Local),
795
796 ConstantIndex {
807 offset: u64,
809 min_length: u64,
814 from_end: bool,
817 },
818
819 Subslice {
824 from: u64,
825 to: u64,
826 from_end: bool,
828 },
829
830 Downcast(VariantIdx),
832
833 OpaqueCast(Ty),
836}
837
838#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
839pub struct UserTypeProjection {
840 pub base: UserTypeAnnotationIndex,
841
842 pub projection: Opaque,
843}
844
845pub type Local = usize;
846
847pub const RETURN_LOCAL: Local = 0;
848
849pub type FieldIdx = usize;
864
865type UserTypeAnnotationIndex = usize;
866
867#[derive(Clone, Debug, Eq, PartialEq, Serialize)]
869pub struct SwitchTargets {
870 branches: Vec<(u128, BasicBlockIdx)>,
873 otherwise: BasicBlockIdx,
876}
877
878impl SwitchTargets {
879 pub fn all_targets(&self) -> Successors {
881 self.branches.iter().map(|(_, target)| *target).chain(Some(self.otherwise)).collect()
882 }
883
884 pub fn otherwise(&self) -> BasicBlockIdx {
886 self.otherwise
887 }
888
889 pub fn branches(&self) -> impl Iterator<Item = (u128, BasicBlockIdx)> {
891 self.branches.iter().copied()
892 }
893
894 pub fn len(&self) -> usize {
896 self.branches.len() + 1
897 }
898
899 pub fn new(branches: Vec<(u128, BasicBlockIdx)>, otherwise: BasicBlockIdx) -> SwitchTargets {
901 SwitchTargets { branches, otherwise }
902 }
903}
904
905#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
906pub enum BorrowKind {
907 Shared,
909
910 Fake(FakeBorrowKind),
913
914 Mut {
916 kind: MutBorrowKind,
918 },
919}
920
921impl BorrowKind {
922 pub fn to_mutable_lossy(self) -> Mutability {
923 match self {
924 BorrowKind::Mut { .. } => Mutability::Mut,
925 BorrowKind::Shared => Mutability::Not,
926 BorrowKind::Fake(_) => Mutability::Not,
928 }
929 }
930}
931
932#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
933pub enum RawPtrKind {
934 Mut,
935 Const,
936 FakeForPtrMetadata,
937}
938
939impl RawPtrKind {
940 pub fn to_mutable_lossy(self) -> Mutability {
941 match self {
942 RawPtrKind::Mut { .. } => Mutability::Mut,
943 RawPtrKind::Const => Mutability::Not,
944 RawPtrKind::FakeForPtrMetadata => Mutability::Not,
946 }
947 }
948}
949
950#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
951pub enum MutBorrowKind {
952 Default,
953 TwoPhaseBorrow,
954 ClosureCapture,
955}
956
957#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
958pub enum FakeBorrowKind {
959 Deep,
961 Shallow,
966}
967
968#[derive(Copy, Clone, Debug, PartialEq, Eq, Hash, Serialize)]
969pub enum Mutability {
970 Not,
971 Mut,
972}
973
974#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
975pub enum Safety {
976 Safe,
977 Unsafe,
978}
979
980#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
981pub enum PointerCoercion {
982 ReifyFnPointer,
984
985 UnsafeFnPointer,
987
988 ClosureFnPointer(Safety),
991
992 MutToConstPointer,
994
995 ArrayToPointer,
997
998 Unsize,
1005}
1006
1007#[derive(Copy, Clone, Debug, Eq, PartialEq, Hash, Serialize)]
1008pub enum CastKind {
1009 PointerExposeAddress,
1011 PointerWithExposedProvenance,
1012 PointerCoercion(PointerCoercion),
1013 IntToInt,
1014 FloatToInt,
1015 FloatToFloat,
1016 IntToFloat,
1017 PtrToPtr,
1018 FnPtrToPtr,
1019 Transmute,
1020 Subtype,
1021}
1022
1023#[derive(Clone, Debug, Eq, PartialEq, Hash, Serialize)]
1024pub enum NullOp {
1025 OffsetOf(Vec<(VariantIdx, FieldIdx)>),
1027 UbChecks,
1029 ContractChecks,
1031}
1032
1033impl Operand {
1034 pub fn ty(&self, locals: &[LocalDecl]) -> Result<Ty, Error> {
1041 match self {
1042 Operand::Copy(place) | Operand::Move(place) => place.ty(locals),
1043 Operand::Constant(c) => Ok(c.ty()),
1044 }
1045 }
1046}
1047
1048impl ConstOperand {
1049 pub fn ty(&self) -> Ty {
1050 self.const_.ty()
1051 }
1052}
1053
1054impl Place {
1055 pub fn ty(&self, locals: &[LocalDecl]) -> Result<Ty, Error> {
1062 self.projection.iter().try_fold(locals[self.local].ty, |place_ty, elem| elem.ty(place_ty))
1063 }
1064}
1065
1066impl ProjectionElem {
1067 pub fn ty(&self, place_ty: Ty) -> Result<Ty, Error> {
1069 let ty = place_ty;
1070 match &self {
1071 ProjectionElem::Deref => Self::deref_ty(ty),
1072 ProjectionElem::Field(_idx, fty) => Ok(*fty),
1073 ProjectionElem::Index(_) | ProjectionElem::ConstantIndex { .. } => Self::index_ty(ty),
1074 ProjectionElem::Subslice { from, to, from_end } => {
1075 Self::subslice_ty(ty, *from, *to, *from_end)
1076 }
1077 ProjectionElem::Downcast(_) => Ok(ty),
1078 ProjectionElem::OpaqueCast(ty) => Ok(*ty),
1079 }
1080 }
1081
1082 fn index_ty(ty: Ty) -> Result<Ty, Error> {
1083 ty.kind().builtin_index().ok_or_else(|| error!("Cannot index non-array type: {ty:?}"))
1084 }
1085
1086 fn subslice_ty(ty: Ty, from: u64, to: u64, from_end: bool) -> Result<Ty, Error> {
1087 let ty_kind = ty.kind();
1088 match ty_kind {
1089 TyKind::RigidTy(RigidTy::Slice(..)) => Ok(ty),
1090 TyKind::RigidTy(RigidTy::Array(inner, _)) if !from_end => Ty::try_new_array(
1091 inner,
1092 to.checked_sub(from).ok_or_else(|| error!("Subslice overflow: {from}..{to}"))?,
1093 ),
1094 TyKind::RigidTy(RigidTy::Array(inner, size)) => {
1095 let size = size.eval_target_usize()?;
1096 let len = size - from - to;
1097 Ty::try_new_array(inner, len)
1098 }
1099 _ => Err(Error(format!("Cannot subslice non-array type: `{ty_kind:?}`"))),
1100 }
1101 }
1102
1103 fn deref_ty(ty: Ty) -> Result<Ty, Error> {
1104 let deref_ty = ty
1105 .kind()
1106 .builtin_deref(true)
1107 .ok_or_else(|| error!("Cannot dereference type: {ty:?}"))?;
1108 Ok(deref_ty.ty)
1109 }
1110}